High-Transmittance TGV Sapphire Substrate Conductive Aerospace Automotive AR VR
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Product Overview TGV Sapphire is a transparent conductive glass material based on sapphire (Al₂O₃) substrates, coated with transparent conductive oxide (TCO) films (e.g., ITO, AZO) via magnetron sputtering. TGV Sapphire combines sapphire’s ultra-high hardness, high-temperature resistance, and TCO films’ conductivity and transparency, making it ideal for high-performance electronic devices in extreme environments.
Principle
Using laser drilling or dry etching, vertical vias with high aspect ratios are created in the sapphire substrate. These vias are metallized to enable vertical electrical signal transmission, while maintaining the sapphire’s optical clarity and mechanical integrity.
Sapphire Substrate: Sapphire (Al₂O₃) is one of the hardest oxide materials in nature, offering exceptional chemical stability, high thermal conductivity (~40 W/m·K), and a wide optical bandgap (~9.9 eV), enabling resistance to high temperatures and harsh chemical environments.
Technical Challenges
Extreme Hardness
Brittle Fracture Risk
Micro-Hole Requirements
Thermal Damage Control
Specification
Applications
Consumer Electronics: Scratch-resistant AR/VR displays, flexible OLED backplanes.
Q&A
Q1: What’s the difference between TGV Sapphire and ordinary
conductive glass?
Q2: Can TGV Sapphire be customized (e.g., shape cutting,
thickness adjustment)? Q3: Does extreme temperature affect TGV Sapphire conductivity?
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Product Tags: Automotive Sapphire Substrate Conductive Sapphire Substrate High-Transmittance Sapphire Substrate |
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